Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructures, thereby bridging photonics to the nano scale. The decay of surface plasmons generates energetic ‘hot’ carriers, which can drive chemical reactions or be injected into semiconductors for nano-scale photochemical or photovoltaic energy conversion. Novel plasmonic hot carrier devices and architectures continue to be demonstrated, but the complexity of the underlying processes make a complete microscopic understanding of all the mechanisms and design considerations for such devices extremely challenging.Here,we review the theoretical and computational efforts to understand and model plasmonic hot carrier devices.We split the problem into three...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
Metal nanoparticles are attractive for plasmon-enhanced generation of hot carriers, which may be har...
Hot-carrier generation from surface plasmon decay has found applications in many branches of physics...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
Hot carriers produced from the decay of localized surface plasmons in metallic nanoparticles are int...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
Plasmonic hot carrier devices extract excited carriers from metal nanostructures before equilibratio...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
Metal nanoparticles are attractive for plasmon-enhanced generation of hot carriers, which may be har...
Hot-carrier generation from surface plasmon decay has found applications in many branches of physics...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
Hot carriers produced from the decay of localized surface plasmons in metallic nanoparticles are int...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Decay of surface plasmons to hot carriers finds a wide variety of applications in energy conversion,...
Plasmonic hot carrier devices extract excited carriers from metal nanostructures before equilibratio...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
Metal nanoparticles are attractive for plasmon-enhanced generation of hot carriers, which may be har...
Hot-carrier generation from surface plasmon decay has found applications in many branches of physics...